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Ship function module and combined structure thereof

A technology of functional modules and combined structures, applied in the field of ships, can solve the problems of limited ship space, less use, troubles, etc., and achieve the effect of diverse functions, simple structure, and convenient operation

Pending Publication Date: 2020-04-17
WEIHAI OCEAN VOCATIONAL COLLEGE
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] Ships sometimes need to use small boats to tow cables and pipelines. At present, small boats provided by third parties are usually used. These small boats are generally manned. In some special cases, such as far away from the coast, there is no third-party service agency , or when the water depth is relatively shallow, it is difficult for existing solutions to effectively meet the demand. If the ship carries a small boat, it will be extremely troublesome
[0003] In addition, the space of the ship is limited, and the requirements of various working conditions usually change greatly. Sometimes larger or more powerful equipment is required, and sometimes only smaller types of equipment are required, so the equipment can be flexibly changed according to needs. It is extremely beneficial to the development of ship technology, such as float valves or cable traction boats for ships. These devices are rarely used at ordinary times. Rarely used, especially when the ship is docked, it is not used

Method used

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  • Ship function module and combined structure thereof
  • Ship function module and combined structure thereof
  • Ship function module and combined structure thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0030] Such as figure 1 Shown, a kind of ship function module and composite structure thereof, the module comprises: support 1, two parallel cylindrical buoys 2 arranged on the support, said cylindrical buoys are provided with spiral blades 3, on the two cylindrical buoys The direction of rotation of the helical blades is opposite, and the two ends of the cylindrical buoy are provided with a rotating shaft 4, and the rotating shaft is rotatably arranged on the support; the helical blades on the two parallel cylindrical buoys have opposite helical directions with respect to the rotating shaft; the rotating shaft Rotation is controlled by motor 5 . When in use, the cylindrical buoy floats on the water surface, and by controlling the steering coordination of the two cylindrical buoys, the module can move forward, backward, left, and right in the water. The module shown in Figure 3 is similar to the thread. Compared with the paper, the rotation direction of the helical blade on t...

Embodiment 2

[0035] Such as Figure 4 As shown, a composite structure of ship function modules, the rotating shafts at the ends of the cylindrical buoys of different modules are axially connected to each other to form a row of module groups, so as to be suitable for transporting strip-shaped objects. At this time, the same The axes can be driven by the same motor for easy control.

[0036] Such as Figure 5 As shown, different row module groups are arranged side by side and connected to form a row module group, so as to be suitable for transporting larger objects.

[0037] The rotating shaft at the end of the cylindrical buoy of one module is connected to the rotating shaft at the end of the cylindrical buoy of the other module through a hinge, such as a universal joint, so that the combined body can be bent, folded and deformed, suitable for storage and transportation. If the two relatively rotating shafts of the hinge are respectively connected to the stator and the rotor of the genera...

Embodiment 3

[0039] Such as Figure 6As shown, a bevel gear 11 is provided on the rotating shaft, and the four module supports are fixedly connected to each other through the intermediate support 12, and the bevel gears on the rotating shaft bodies of the two cylindrical buoys adjacent to each other on the four modules mesh with each other, and the four module shafts The ends are adjacent to form a rectangular module group, and the rectangular ends on the rectangular module group are respectively facing four directions perpendicular to each other. Relative to the center direction of the four modules, the spiral on the left cylindrical buoy of each module The blades are right-handed, and the helical blades on the right cylindrical buoy are left-handed. So that the rotation of the cylindrical buoys on the two opposite modules can drive the rotation of the other two modules, and if it needs to move in that direction, just control the rotation of the cylindrical buoys on the corresponding side...

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PUM

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Abstract

The invention provides a ship function module and a combined structure thereof, and relates to a modular ship part and a combined structure thereof. The invention provides a ship function module withmultiple functions. According to the ship function module and the combined structure thereof, the module includes: a bracket and two parallel cylindrical buoys arranged on the bracket, wherein a spiral blade is arranged on each cylindrical buoy; the spiral blades on the two cylindrical buoys are opposite in rotating direction; rotating shafts are arranged at the two ends of each cylindrical buoy and rotatably arranged on the bracket; and a temporary connecting mechanism capable of being rapidly connected with the rotating shaft at the end of the cylindrical buoy of the other module is arrangedat the end of the cylindrical buoy of one module. Omnibearing movement can be conveniently achieved through the combination of the cylindrical buoys with the rotating blades, the module can be conveniently combined, disassembled and assembled according to actual use, the functions are diversified, and the ship function module can be used as a carrying device and can also be used as an ocean energy utilization device.

Description

technical field [0001] The invention belongs to the technical field of ships, and relates to a modular ship component and a combined structure thereof. Background technique [0002] Ships sometimes need to use small boats to tow cables and pipelines. At present, small boats provided by third parties are usually used. These small boats are generally manned. In some special cases, such as far away from the coast, there is no third-party service agency , or when the water depth is relatively shallow, existing solutions are difficult to effectively meet the demand, and if a small boat is carried on the ship, it will be extremely troublesome. [0003] In addition, the space of the ship is limited, and the requirements of various working conditions usually change greatly. Sometimes larger or more powerful equipment is required, and sometimes only smaller types of equipment are required, so the equipment can be flexibly changed according to needs. It is extremely beneficial to the...

Claims

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Application Information

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IPC IPC(8): B63B21/00F03B13/00
CPCB63B21/00B63B2021/003F03B13/00
Inventor 王美玉赵建方天翔滕强
Owner WEIHAI OCEAN VOCATIONAL COLLEGE
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